会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 8. 发明授权
    • Micro reactor
    • 微反应堆
    • US07955564B2
    • 2011-06-07
    • US12289475
    • 2008-10-28
    • Jung Hyun SeoJae Hoon ChoeYoo Seok KimKwang Ho Song
    • Jung Hyun SeoJae Hoon ChoeYoo Seok KimKwang Ho Song
    • B01J19/00B01J10/00B01J12/00B01J14/00
    • B01J19/0093B01F13/0066B01J2219/00783B01J2219/00804B01J2219/0086B01J2219/00889
    • The present invention discloses the substrate and the micro reactor for mixing two kinds of fluids. The micro reactor of the present invention comprises a housing having first and second inlet ports and an outlet port formed thereon; and a plurality of substrates stacked in the housing, wherein the substrate has a space formed at a central portion thereof in one direction; a plurality of first channels extended from one side thereof to the space and corresponding to the first inlet port; and a plurality of second channels extended from the other side thereof to the space and corresponding to the second inlet port; wherein a portion between two neighboring first channels corresponds to the second channel and a portion between two neighboring second channels corresponds to the first channel to form sequentially reaction interfaces of the first and second fluids in the space.
    • 本发明公开了用于混合两种流体的基板和微反应器。 本发明的微反应器包括具有形成在其上的第一和第二入口和出口的壳体; 以及堆叠在所述壳体中的多个基板,其中所述基板在其一个方向的中心部分处形成有空间; 多个第一通道从其一侧延伸到所述空间并对应于所述第一入口; 以及从其另一侧延伸到所述空间并对应于所述第二入口的多个第二通道; 其中两个相邻的第一通道之间的部分对应于第二通道,并且两个相邻的第二通道之间的部分对应于第一通道,以在空间中依次形成第一和第二流体的反应界面。
    • 9. 发明申请
    • Micro reactor
    • 微反应堆
    • US20090142237A1
    • 2009-06-04
    • US12289475
    • 2008-10-28
    • Jung Hyun SeoJae Hoon ChoeYoo Seok KimKwang Ho Song
    • Jung Hyun SeoJae Hoon ChoeYoo Seok KimKwang Ho Song
    • B01J19/00
    • B01J19/0093B01F13/0066B01J2219/00783B01J2219/00804B01J2219/0086B01J2219/00889
    • The present invention discloses the substrate and the micro reactor for mixing two kinds of fluids. The micro reactor of the present invention comprises a housing having first and second inlet ports and an outlet port formed thereon; and a plurality of substrates stacked in the housing, wherein the substrate has a space formed at a central portion thereof in one direction; a plurality of first channels extended from one side thereof to the space and corresponding to the first inlet port; and a plurality of second channels extended from the other side thereof to the space and corresponding to the second inlet port; wherein a portion between two neighboring first channels corresponds to the second channel and a portion between two neighboring second channels corresponds to the first channel to form sequentially reaction interfaces of the first and second fluids in the space.
    • 本发明公开了用于混合两种流体的基板和微反应器。 本发明的微反应器包括具有形成在其上的第一和第二入口和出口的壳体; 以及堆叠在所述壳体中的多个基板,其中所述基板在其一个方向的中心部分处形成有空间; 多个第一通道从其一侧延伸到所述空间并对应于所述第一入口; 以及从其另一侧延伸到所述空间并对应于所述第二入口的多个第二通道; 其中两个相邻的第一通道之间的部分对应于第二通道,并且两个相邻的第二通道之间的部分对应于第一通道,以在空间中依次形成第一和第二流体的反应界面。
    • 10. 发明申请
    • Preparation method of metal nano particle using micro mixer
    • 使用微型混合器制备金属纳米颗粒的方法
    • US20080245184A1
    • 2008-10-09
    • US11812072
    • 2007-06-14
    • Woo Ram LeeJae Hoon ChoeJung Hyun SeoYoo Seok Kim
    • Woo Ram LeeJae Hoon ChoeJung Hyun SeoYoo Seok Kim
    • B22F9/16B01J19/24B22F9/24
    • B22F9/24B01F5/0602B01F13/0059B22F1/0018B82Y30/00
    • Disclosed is a method for preparing metal nanoparticles, the method comprising the steps of: providing a solution of metal salt and a solution of a strong reducing agent with a standard reduction potential of −0.23V or lower; and mixing the solutions by using a micro mixer without supplying additional heat energy from the exterior, while carrying out reduction of the metal. Metal nanoparticles obtained by the above method, and a micro mixer for preparing the metal nanoparticles are also disclosed. The method for preparing metal nanoparticles via the reduction of metal ions in a solution uses a strong reducing agent and a micro mixer. Therefore, it is possible to obtain metal nanoparticles having a particle size of 20 nm or more and a uniform shape and dimension without supplying additional heat energy from the exterior. Additionally, the method is amenable to a continuous process, and thus ensures cost-efficiency and stable product quality required for mass production.
    • 公开了一种制备金属纳米颗粒的方法,该方法包括以下步骤:提供金属盐溶液和浓度为-0.23V或更低的标准还原电位的强还原剂溶液; 并且通过使用微型混合器混合溶液而不从外部提供额外的热能,同时进行金属的还原。 还公开了通过上述方法获得的金属纳米颗粒和用于制备金属纳米颗粒的微型混合器。 通过在溶液中还原金属离子制备金属纳米颗粒的方法使用强还原剂和微混合器。 因此,可以获得粒径为20nm以上且均匀的形状和尺寸的金属纳米粒子,而不从外部提供额外的热能。 此外,该方法适用于连续工艺,从而确保大规模生产所需的成本效益和稳定的产品质量。